Wang Xiu, Du Lei, Wang Wanxia, Zhang Zhongxing, Wu Yuxia, Wang Yanxiu
College of Horticulture, Gansu Agricultural University, Lanzhou, 730070 China.
Physiol Mol Biol Plants. 2023 Jun;29(6):799-813. doi: 10.1007/s12298-023-01333-5. Epub 2023 Jul 13.
Carotenoids are powerful antioxidants that mediate transfer of electrons, directly affect abiotic stress responses in plants through regulating activity of antioxidant enzymes. ζ-Carotene desaturase (ZDS) is a key enzyme in carotenoid biosynthesis pathway, which can catalyze ζ-carotene to form lycopene to regulate carotenoid biosynthesis and accumulation. However, the mechanism of its regulation of saline-alkali stress remains unclear. In this research, based on transcriptomic analysis of with a apple rootstock, we screened out ZDS gene (LOC103451012), with significantly high expression by saline-alkali stress, whose expression in the leaves was 10.8-fold than that of the control (0 h) under 48 h of stress. Subsequently, the gene was isolated from and transgenic , tobacco, and apple calli were successfully obtained through agrobacterium-mediated genetic transformation. We found that overexpression of enhanced the tolerance of , tobacco and apple calli under saline-alkali stress and caused a variety of physiological and biochemical changes: compared with wild-type, transgenic plants grew better under saline stress and lines showed higher chlorophyll content, POD, SOD, CAT activities and proline content, lower electrical conductivity and MDA content. These results indicate that plays an important role in plant resistance to saline-alkali stress, providing excellent resistance genes for the regulatory network of salinity stress response in apples and provide a theoretical basis for the breeding of apple varieties with strong saline-alkali resistance.
The online version contains supplementary material available at 10.1007/s12298-023-01333-5.
类胡萝卜素是强大的抗氧化剂,可介导电子转移,通过调节抗氧化酶的活性直接影响植物的非生物胁迫反应。ζ-胡萝卜素去饱和酶(ZDS)是类胡萝卜素生物合成途径中的关键酶,可催化ζ-胡萝卜素形成番茄红素,从而调节类胡萝卜素的生物合成和积累。然而,其调节盐碱胁迫的机制尚不清楚。在本研究中,基于对一种苹果砧木的转录组分析,我们筛选出了在盐碱胁迫下表达显著上调的ZDS基因(LOC103451012),在胁迫48小时后,其在叶片中的表达量是对照(0小时)的10.8倍。随后,从该苹果砧木中分离出ZDS基因,并通过农杆菌介导的遗传转化成功获得了转基因烟草和苹果愈伤组织。我们发现,ZDS基因的过表达增强了烟草和苹果愈伤组织在盐碱胁迫下的耐受性,并引起了多种生理生化变化:与野生型相比,转基因植物在盐胁迫下生长更好,ZDS基因过表达株系的叶绿素含量、POD、SOD、CAT活性和脯氨酸含量更高,电导率和MDA含量更低。这些结果表明,ZDS在植物抗盐碱胁迫中起重要作用,为苹果盐碱胁迫响应调控网络提供了优良的抗性基因,为苹果耐盐碱品种的选育提供了理论依据。
在线版本包含可在10.1007/s12298-023-01333-5获取的补充材料。